Theodore Potsis – Computational wind engineering – Research Excellence in Civil and Environmental Engineering Award

Theodore Potsis - Computational wind engineering - Research Excellence in Civil and Environmental Engineering Award

Concordia University - Canada

AUTHOR PROFILE

Scopus
ORCID

EARLY ACADEMIC PURSUITS

Theodore Potsis embarked on his academic journey at the National Technical University of Athens (NTUA), where he pursued a Bachelor's and Master's degree in Civil Engineering with a specialization in Structural Engineering. His master's thesis titled "Numerical investigation of wind loading on circular and square obstacles" showcased his early interest in computational wind engineering and its application to structural analysis.

PROFESSIONAL ENDEAVORS

As a Ph.D. candidate at Concordia University, Theodore Potsis has been actively involved in computational wind engineering research, focusing on structural and environmental applications. His contributions include investigating wind-induced peak pressures on building roofs and developing computational methodologies for dynamic terrain analysis. Prior to his doctoral studies, Theodore gained research experience as an independent researcher at the Institute of Steel Structures, NTUA, where he conducted numerical investigations of wind loads on bridge decks and obstacles.

CONTRIBUTIONS AND RESEARCH FOCUS

Theodore Potsis's research in computational wind engineering has led to significant contributions in understanding wind behavior and its impact on building structures. His publications in reputable journals such as the Journal of Wind Engineering and Industrial Aerodynamics and Buildings have advanced knowledge in areas such as dynamic terrain methodology, wind-induced pressures on buildings, and spectral content expression in the lower atmospheric boundary layer.

IMPACT AND INFLUENCE

Through his research and presentations at international conferences, Theodore Potsis has contributed to shaping the field of computational wind engineering. His work on computational methodologies and wind load analysis has influenced research directions and practical applications in building design, urban planning, and environmental assessment.

ACADEMIC CITATIONS

Theodore Potsis's publications have been cited by fellow researchers and professionals in the field of wind engineering, indicating the impact and relevance of his research findings. His contributions to computational wind engineering have been recognized for their significance in advancing methodologies for assessing wind loads and designing resilient structures.

LEGACY AND FUTURE CONTRIBUTIONS

As Theodore Potsis continues his academic and research endeavors, his legacy lies in the continued advancement of computational wind engineering and its applications in structural and environmental domains. Through ongoing collaborations, teaching experiences, and mentoring, he aims to inspire future generations of researchers and engineers to address complex challenges in wind engineering and contribute to building safer and sustainable built environments.

COMPUTATIONAL WIND ENGINEERING

Theodore Potsis's professional pursuits and research focus center around computational wind engineering, a discipline that involves the numerical simulation and analysis of wind behavior and its effects on structures and the environment. Through his doctoral research and previous projects, he has demonstrated expertise in developing computational methodologies, conducting wind load analysis, and enhancing understanding of wind-structure interaction.

NOTABLE PUBLICATION

Computational wind engineering: 30 years of research progress in building structures and environment.  2023 (13)

Alessandro Pasquale Fantilli | Structural Engineering | Best Researcher Award

AUTHOR PROFILE
Scopus
ORCID
EARLY ACADEMIC PURSUITS:

Alessandro Pasquale Fantilli commenced his academic journey at Politecnico di Torino, marking the initiation of his scholarly pursuits. A detailed exploration of his early academic pursuits, including educational milestones, areas of study, and any noteworthy achievements during this formative period, provides essential context to understand his intellectual development.

PROFESSIONAL ENDEAVORS:

Transitioning from academia to the professional arena, Fantilli's career unfolded with diverse professional endeavors. Insights into his roles, projects, and collaborations during this phase, particularly those aligned with his academic background, contribute to comprehending the practical applications of his knowledge and skills.

CONTRIBUTIONS AND RESEARCH FOCUS:

Fantilli's contributions and research focus form a pivotal aspect of his academic and professional identity. Whether through scholarly publications, participation in research projects, or advancements within a specific field, understanding the thematic concentration of his contributions offers insights into his academic impact.

IMPACT AND INFLUENCE:

Assessing Fantilli's impact and influence involves recognizing the broader effects of his work. This encompasses positive outcomes in academia, acknowledgment within his professional network, and any influence he may have had on students, colleagues, or the academic community at large.

ACADEMIC CITATIONS:

An indicator of Fantilli's academic influence is reflected in the number of citations his work has garnered. High citation metrics suggest that his research has made a significant contribution to the academic discourse, with fellow researchers and scholars referencing his work in their own studies.

LEGACY:

Alessandro Pasquale Fantilli's legacy is defined by the lasting impact he leaves at Politecnico di Torino. This may include contributions to the academic environment, mentorship of students, and the establishment of a positive and collaborative culture within his academic sphere.

FUTURE CONTRIBUTIONS:

Looking ahead, Fantilli's future contributions may involve continued advancements in his academic and professional pursuits. This could encompass further research, participation in impactful projects, mentorship of emerging scholars, and potentially taking on leadership roles that contribute to the growth and development of Politecnico di Torino.

NOTABLE PUBLICATION

The Use of Recycled Steel Fibre in Precast Structures.  2023

The strength of concrete in existing Italian tunnels.  2023